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Nicolas Geoffray804d0932014-05-02 08:46:00 +01001/*
2 * Copyright (C) 2014 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#include "ssa_liveness_analysis.h"
Nicolas Geoffray31d76b42014-06-09 15:02:22 +010018
Ian Rogerse77493c2014-08-20 15:08:45 -070019#include "base/bit_vector-inl.h"
Nicolas Geoffray31d76b42014-06-09 15:02:22 +010020#include "code_generator.h"
Nicolas Geoffray804d0932014-05-02 08:46:00 +010021#include "nodes.h"
22
23namespace art {
24
25void SsaLivenessAnalysis::Analyze() {
Nicolas Geoffray0d3f5782014-05-14 09:43:38 +010026 LinearizeGraph();
Nicolas Geoffray804d0932014-05-02 08:46:00 +010027 NumberInstructions();
Nicolas Geoffrayddb311f2014-05-16 09:28:54 +010028 ComputeLiveness();
Nicolas Geoffray804d0932014-05-02 08:46:00 +010029}
30
Nicolas Geoffray0d3f5782014-05-14 09:43:38 +010031static bool IsLoop(HLoopInformation* info) {
32 return info != nullptr;
33}
34
35static bool InSameLoop(HLoopInformation* first_loop, HLoopInformation* second_loop) {
36 return first_loop == second_loop;
37}
38
39static bool IsInnerLoop(HLoopInformation* outer, HLoopInformation* inner) {
40 return (inner != outer)
41 && (inner != nullptr)
42 && (outer != nullptr)
43 && inner->IsIn(*outer);
44}
45
Vladimir Marko2aaa4b52015-09-17 17:03:26 +010046static void AddToListForLinearization(ArenaVector<HBasicBlock*>* worklist, HBasicBlock* block) {
Nicolas Geoffraya8eed3a2014-11-24 17:47:10 +000047 HLoopInformation* block_loop = block->GetLoopInformation();
Vladimir Marko2aaa4b52015-09-17 17:03:26 +010048 auto insert_pos = worklist->rbegin(); // insert_pos.base() will be the actual position.
49 for (auto end = worklist->rend(); insert_pos != end; ++insert_pos) {
50 HBasicBlock* current = *insert_pos;
Nicolas Geoffraya8eed3a2014-11-24 17:47:10 +000051 HLoopInformation* current_loop = current->GetLoopInformation();
52 if (InSameLoop(block_loop, current_loop)
53 || !IsLoop(current_loop)
54 || IsInnerLoop(current_loop, block_loop)) {
55 // The block can be processed immediately.
56 break;
Nicolas Geoffraye50fa582014-11-24 17:44:15 +000057 }
Nicolas Geoffraye50fa582014-11-24 17:44:15 +000058 }
Vladimir Marko2aaa4b52015-09-17 17:03:26 +010059 worklist->insert(insert_pos.base(), block);
Nicolas Geoffray0d3f5782014-05-14 09:43:38 +010060}
61
Nicolas Geoffray0d3f5782014-05-14 09:43:38 +010062void SsaLivenessAnalysis::LinearizeGraph() {
Nicolas Geoffraya8eed3a2014-11-24 17:47:10 +000063 // Create a reverse post ordering with the following properties:
64 // - Blocks in a loop are consecutive,
65 // - Back-edge is the last block before loop exits.
66
67 // (1): Record the number of forward predecessors for each block. This is to
68 // ensure the resulting order is reverse post order. We could use the
69 // current reverse post order in the graph, but it would require making
70 // order queries to a GrowableArray, which is not the best data structure
71 // for it.
Vladimir Marko2aaa4b52015-09-17 17:03:26 +010072 ArenaVector<uint32_t> forward_predecessors(graph_->GetBlocks().size(),
73 graph_->GetArena()->Adapter(kArenaAllocSsaLiveness));
Nicolas Geoffray0d9f17d2015-04-15 14:17:44 +010074 for (HReversePostOrderIterator it(*graph_); !it.Done(); it.Advance()) {
David Brazdil46e2a392015-03-16 17:31:52 +000075 HBasicBlock* block = it.Current();
Vladimir Marko60584552015-09-03 13:35:12 +000076 size_t number_of_forward_predecessors = block->GetPredecessors().size();
Nicolas Geoffraya8eed3a2014-11-24 17:47:10 +000077 if (block->IsLoopHeader()) {
Nicolas Geoffraydb216f42015-05-05 17:02:20 +010078 number_of_forward_predecessors -= block->GetLoopInformation()->NumberOfBackEdges();
Nicolas Geoffraya8eed3a2014-11-24 17:47:10 +000079 }
Vladimir Marko2aaa4b52015-09-17 17:03:26 +010080 forward_predecessors[block->GetBlockId()] = number_of_forward_predecessors;
Nicolas Geoffraya8eed3a2014-11-24 17:47:10 +000081 }
82
83 // (2): Following a worklist approach, first start with the entry block, and
84 // iterate over the successors. When all non-back edge predecessors of a
85 // successor block are visited, the successor block is added in the worklist
86 // following an order that satisfies the requirements to build our linear graph.
Vladimir Markofa6b93c2015-09-15 10:15:55 +010087 graph_->linear_order_.reserve(graph_->GetReversePostOrder().size());
Vladimir Marko2aaa4b52015-09-17 17:03:26 +010088 ArenaVector<HBasicBlock*> worklist(graph_->GetArena()->Adapter(kArenaAllocSsaLiveness));
89 worklist.push_back(graph_->GetEntryBlock());
Nicolas Geoffraya8eed3a2014-11-24 17:47:10 +000090 do {
Vladimir Marko2aaa4b52015-09-17 17:03:26 +010091 HBasicBlock* current = worklist.back();
92 worklist.pop_back();
Vladimir Markofa6b93c2015-09-15 10:15:55 +010093 graph_->linear_order_.push_back(current);
Vladimir Marko60584552015-09-03 13:35:12 +000094 for (HBasicBlock* successor : current->GetSuccessors()) {
Nicolas Geoffraya8eed3a2014-11-24 17:47:10 +000095 int block_id = successor->GetBlockId();
Vladimir Marko2aaa4b52015-09-17 17:03:26 +010096 size_t number_of_remaining_predecessors = forward_predecessors[block_id];
Nicolas Geoffraya8eed3a2014-11-24 17:47:10 +000097 if (number_of_remaining_predecessors == 1) {
98 AddToListForLinearization(&worklist, successor);
99 }
Vladimir Marko2aaa4b52015-09-17 17:03:26 +0100100 forward_predecessors[block_id] = number_of_remaining_predecessors - 1;
Nicolas Geoffraya8eed3a2014-11-24 17:47:10 +0000101 }
Vladimir Marko2aaa4b52015-09-17 17:03:26 +0100102 } while (!worklist.empty());
Nicolas Geoffray0d3f5782014-05-14 09:43:38 +0100103}
104
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100105void SsaLivenessAnalysis::NumberInstructions() {
106 int ssa_index = 0;
Nicolas Geoffrayddb311f2014-05-16 09:28:54 +0100107 size_t lifetime_position = 0;
Nicolas Geoffraya7062e02014-05-22 12:50:17 +0100108 // Each instruction gets a lifetime position, and a block gets a lifetime
Nicolas Geoffrayddb311f2014-05-16 09:28:54 +0100109 // start and end position. Non-phi instructions have a distinct lifetime position than
110 // the block they are in. Phi instructions have the lifetime start of their block as
Nicolas Geoffraya7062e02014-05-22 12:50:17 +0100111 // lifetime position.
112 //
113 // Because the register allocator will insert moves in the graph, we need
114 // to differentiate between the start and end of an instruction. Adding 2 to
115 // the lifetime position for each instruction ensures the start of an
116 // instruction is different than the end of the previous instruction.
Nicolas Geoffray0d9f17d2015-04-15 14:17:44 +0100117 for (HLinearOrderIterator it(*graph_); !it.Done(); it.Advance()) {
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100118 HBasicBlock* block = it.Current();
Nicolas Geoffraya7062e02014-05-22 12:50:17 +0100119 block->SetLifetimeStart(lifetime_position);
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100120
Andreas Gampe277ccbd2014-11-03 21:36:10 -0800121 for (HInstructionIterator inst_it(block->GetPhis()); !inst_it.Done(); inst_it.Advance()) {
122 HInstruction* current = inst_it.Current();
Nicolas Geoffrayc0572a42015-02-06 14:35:25 +0000123 codegen_->AllocateLocations(current);
Nicolas Geoffray31d76b42014-06-09 15:02:22 +0100124 LocationSummary* locations = current->GetLocations();
125 if (locations != nullptr && locations->Out().IsValid()) {
Vladimir Marko2aaa4b52015-09-17 17:03:26 +0100126 instructions_from_ssa_index_.push_back(current);
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100127 current->SetSsaIndex(ssa_index++);
Nicolas Geoffraya7062e02014-05-22 12:50:17 +0100128 current->SetLiveInterval(
Nicolas Geoffray0d9f17d2015-04-15 14:17:44 +0100129 LiveInterval::MakeInterval(graph_->GetArena(), current->GetType(), current));
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100130 }
Nicolas Geoffrayddb311f2014-05-16 09:28:54 +0100131 current->SetLifetimePosition(lifetime_position);
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100132 }
Nicolas Geoffrayec7e4722014-06-06 11:24:33 +0100133 lifetime_position += 2;
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100134
Nicolas Geoffray31d76b42014-06-09 15:02:22 +0100135 // Add a null marker to notify we are starting a block.
Vladimir Marko2aaa4b52015-09-17 17:03:26 +0100136 instructions_from_lifetime_position_.push_back(nullptr);
Nicolas Geoffray31d76b42014-06-09 15:02:22 +0100137
Andreas Gampe277ccbd2014-11-03 21:36:10 -0800138 for (HInstructionIterator inst_it(block->GetInstructions()); !inst_it.Done();
139 inst_it.Advance()) {
140 HInstruction* current = inst_it.Current();
Nicolas Geoffrayc0572a42015-02-06 14:35:25 +0000141 codegen_->AllocateLocations(current);
Nicolas Geoffray31d76b42014-06-09 15:02:22 +0100142 LocationSummary* locations = current->GetLocations();
143 if (locations != nullptr && locations->Out().IsValid()) {
Vladimir Marko2aaa4b52015-09-17 17:03:26 +0100144 instructions_from_ssa_index_.push_back(current);
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100145 current->SetSsaIndex(ssa_index++);
Nicolas Geoffraya7062e02014-05-22 12:50:17 +0100146 current->SetLiveInterval(
Nicolas Geoffray0d9f17d2015-04-15 14:17:44 +0100147 LiveInterval::MakeInterval(graph_->GetArena(), current->GetType(), current));
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100148 }
Vladimir Marko2aaa4b52015-09-17 17:03:26 +0100149 instructions_from_lifetime_position_.push_back(current);
Nicolas Geoffraya7062e02014-05-22 12:50:17 +0100150 current->SetLifetimePosition(lifetime_position);
151 lifetime_position += 2;
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100152 }
Nicolas Geoffrayddb311f2014-05-16 09:28:54 +0100153
Nicolas Geoffraya7062e02014-05-22 12:50:17 +0100154 block->SetLifetimeEnd(lifetime_position);
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100155 }
156 number_of_ssa_values_ = ssa_index;
157}
158
Nicolas Geoffrayddb311f2014-05-16 09:28:54 +0100159void SsaLivenessAnalysis::ComputeLiveness() {
Nicolas Geoffray0d9f17d2015-04-15 14:17:44 +0100160 for (HLinearOrderIterator it(*graph_); !it.Done(); it.Advance()) {
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100161 HBasicBlock* block = it.Current();
Vladimir Marko2aaa4b52015-09-17 17:03:26 +0100162 block_infos_[block->GetBlockId()] =
163 new (graph_->GetArena()) BlockInfo(graph_->GetArena(), *block, number_of_ssa_values_);
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100164 }
165
Nicolas Geoffrayddb311f2014-05-16 09:28:54 +0100166 // Compute the live ranges, as well as the initial live_in, live_out, and kill sets.
167 // This method does not handle backward branches for the sets, therefore live_in
168 // and live_out sets are not yet correct.
169 ComputeLiveRanges();
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100170
171 // Do a fixed point calculation to take into account backward branches,
172 // that will update live_in of loop headers, and therefore live_out and live_in
173 // of blocks in the loop.
174 ComputeLiveInAndLiveOutSets();
175}
176
Nicolas Geoffrayddb311f2014-05-16 09:28:54 +0100177void SsaLivenessAnalysis::ComputeLiveRanges() {
178 // Do a post order visit, adding inputs of instructions live in the block where
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100179 // that instruction is defined, and killing instructions that are being visited.
Nicolas Geoffray0d9f17d2015-04-15 14:17:44 +0100180 for (HLinearPostOrderIterator it(*graph_); !it.Done(); it.Advance()) {
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100181 HBasicBlock* block = it.Current();
182
183 BitVector* kill = GetKillSet(*block);
184 BitVector* live_in = GetLiveInSet(*block);
185
Nicolas Geoffrayddb311f2014-05-16 09:28:54 +0100186 // Set phi inputs of successors of this block corresponding to this block
187 // as live_in.
Vladimir Marko60584552015-09-03 13:35:12 +0000188 for (HBasicBlock* successor : block->GetSuccessors()) {
Nicolas Geoffrayddb311f2014-05-16 09:28:54 +0100189 live_in->Union(GetLiveInSet(*successor));
David Brazdil77a48ae2015-09-15 12:34:04 +0000190 if (successor->IsCatchBlock()) {
191 // Inputs of catch phis will be kept alive through their environment
192 // uses, allowing the runtime to copy their values to the corresponding
193 // catch phi spill slots when an exception is thrown.
194 // The only instructions which may not be recorded in the environments
195 // are constants created by the SSA builder as typed equivalents of
196 // untyped constants from the bytecode, or phis with only such constants
197 // as inputs (verified by SSAChecker). Their raw binary value must
198 // therefore be the same and we only need to keep alive one.
199 } else {
200 size_t phi_input_index = successor->GetPredecessorIndexOf(block);
201 for (HInstructionIterator phi_it(successor->GetPhis()); !phi_it.Done(); phi_it.Advance()) {
202 HInstruction* phi = phi_it.Current();
203 HInstruction* input = phi->InputAt(phi_input_index);
204 input->GetLiveInterval()->AddPhiUse(phi, phi_input_index, block);
205 // A phi input whose last user is the phi dies at the end of the predecessor block,
206 // and not at the phi's lifetime position.
207 live_in->SetBit(input->GetSsaIndex());
208 }
Nicolas Geoffrayddb311f2014-05-16 09:28:54 +0100209 }
210 }
211
212 // Add a range that covers this block to all instructions live_in because of successors.
Nicolas Geoffray8ddb00c2014-09-29 12:00:40 +0100213 // Instructions defined in this block will have their start of the range adjusted.
Vladimir Markoa5b8fde2014-05-23 15:16:44 +0100214 for (uint32_t idx : live_in->Indexes()) {
Vladimir Marko2aaa4b52015-09-17 17:03:26 +0100215 HInstruction* current = GetInstructionFromSsaIndex(idx);
Vladimir Markoa5b8fde2014-05-23 15:16:44 +0100216 current->GetLiveInterval()->AddRange(block->GetLifetimeStart(), block->GetLifetimeEnd());
Nicolas Geoffrayddb311f2014-05-16 09:28:54 +0100217 }
218
Andreas Gampe277ccbd2014-11-03 21:36:10 -0800219 for (HBackwardInstructionIterator back_it(block->GetInstructions()); !back_it.Done();
220 back_it.Advance()) {
221 HInstruction* current = back_it.Current();
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100222 if (current->HasSsaIndex()) {
Nicolas Geoffrayddb311f2014-05-16 09:28:54 +0100223 // Kill the instruction and shorten its interval.
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100224 kill->SetBit(current->GetSsaIndex());
225 live_in->ClearBit(current->GetSsaIndex());
Nicolas Geoffrayddb311f2014-05-16 09:28:54 +0100226 current->GetLiveInterval()->SetFrom(current->GetLifetimePosition());
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100227 }
228
Nicolas Geoffrayd8126be2015-03-27 10:22:41 +0000229 // Process the environment first, because we know their uses come after
230 // or at the same liveness position of inputs.
Nicolas Geoffray0a23d742015-05-07 11:57:35 +0100231 for (HEnvironment* environment = current->GetEnvironment();
232 environment != nullptr;
233 environment = environment->GetParent()) {
Nicolas Geoffrayd8126be2015-03-27 10:22:41 +0000234 // Handle environment uses. See statements (b) and (c) of the
235 // SsaLivenessAnalysis.
Nicolas Geoffrayd8126be2015-03-27 10:22:41 +0000236 for (size_t i = 0, e = environment->Size(); i < e; ++i) {
237 HInstruction* instruction = environment->GetInstructionAt(i);
Mingyao Yang718493c2015-07-22 15:56:34 -0700238 bool should_be_live = ShouldBeLiveForEnvironment(current, instruction);
Nicolas Geoffrayd8126be2015-03-27 10:22:41 +0000239 if (should_be_live) {
240 DCHECK(instruction->HasSsaIndex());
241 live_in->SetBit(instruction->GetSsaIndex());
242 }
243 if (instruction != nullptr) {
244 instruction->GetLiveInterval()->AddUse(
David Brazdilb3e773e2016-01-26 11:28:37 +0000245 current, environment, i, /* actual_user */ nullptr, should_be_live);
Nicolas Geoffrayd8126be2015-03-27 10:22:41 +0000246 }
247 }
248 }
249
David Brazdilb3e773e2016-01-26 11:28:37 +0000250 // Process inputs of instructions.
251 if (current->IsEmittedAtUseSite()) {
252 if (kIsDebugBuild) {
253 DCHECK(!current->GetLocations()->Out().IsValid());
254 for (HUseIterator<HInstruction*> use_it(current->GetUses());
255 !use_it.Done();
256 use_it.Advance()) {
257 HInstruction* user = use_it.Current()->GetUser();
258 size_t index = use_it.Current()->GetIndex();
259 DCHECK(!user->GetLocations()->InAt(index).IsValid());
260 }
261 DCHECK(!current->HasEnvironmentUses());
262 }
263 } else {
264 for (size_t i = 0, e = current->InputCount(); i < e; ++i) {
265 HInstruction* input = current->InputAt(i);
266 bool has_in_location = current->GetLocations()->InAt(i).IsValid();
267 bool has_out_location = input->GetLocations()->Out().IsValid();
268
269 if (has_in_location) {
270 DCHECK(has_out_location);
271 DCHECK(input->HasSsaIndex());
272 // `Input` generates a result used by `current`. Add use and update
273 // the live-in set.
274 input->GetLiveInterval()->AddUse(current, /* environment */ nullptr, i);
275 live_in->SetBit(input->GetSsaIndex());
276 } else if (has_out_location) {
277 // `Input` generates a result but it is not used by `current`.
278 } else {
279 // `Input` is inlined into `current`. Walk over its inputs and record
280 // uses at `current`.
281 DCHECK(input->IsEmittedAtUseSite());
282 for (size_t i2 = 0, e2 = input->InputCount(); i2 < e2; ++i2) {
283 HInstruction* inlined_input = input->InputAt(i2);
284 DCHECK(inlined_input->HasSsaIndex()) << "Recursive inlining not allowed.";
285 if (input->GetLocations()->InAt(i2).IsValid()) {
286 live_in->SetBit(inlined_input->GetSsaIndex());
287 inlined_input->GetLiveInterval()->AddUse(
288 /* owner */ input, /* environment */ nullptr, i2, /* actual_user */ current);
289 }
290 }
291 }
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100292 }
293 }
294 }
295
Nicolas Geoffrayddb311f2014-05-16 09:28:54 +0100296 // Kill phis defined in this block.
Andreas Gampe277ccbd2014-11-03 21:36:10 -0800297 for (HInstructionIterator inst_it(block->GetPhis()); !inst_it.Done(); inst_it.Advance()) {
298 HInstruction* current = inst_it.Current();
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100299 if (current->HasSsaIndex()) {
300 kill->SetBit(current->GetSsaIndex());
301 live_in->ClearBit(current->GetSsaIndex());
Nicolas Geoffray31d76b42014-06-09 15:02:22 +0100302 LiveInterval* interval = current->GetLiveInterval();
303 DCHECK((interval->GetFirstRange() == nullptr)
304 || (interval->GetStart() == current->GetLifetimePosition()));
305 interval->SetFrom(current->GetLifetimePosition());
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100306 }
Nicolas Geoffrayddb311f2014-05-16 09:28:54 +0100307 }
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100308
Nicolas Geoffrayddb311f2014-05-16 09:28:54 +0100309 if (block->IsLoopHeader()) {
Nicolas Geoffray15bd2282016-01-05 15:55:41 +0000310 if (kIsDebugBuild && block->GetLoopInformation()->IsIrreducible()) {
311 // To satisfy our liveness algorithm, we need to ensure loop headers of
312 // irreducible loops do not have any live-in instructions, except constants
313 // and the current method, which can be trivially re-materialized.
314 for (uint32_t idx : live_in->Indexes()) {
315 HInstruction* instruction = GetInstructionFromSsaIndex(idx);
316 DCHECK(instruction->GetBlock()->IsEntryBlock()) << instruction->DebugName();
317 DCHECK(!instruction->IsParameterValue()) << instruction->DebugName();
318 DCHECK(instruction->IsCurrentMethod() || instruction->IsConstant())
319 << instruction->DebugName();
320 }
321 }
Nicolas Geoffraydb216f42015-05-05 17:02:20 +0100322 size_t last_position = block->GetLoopInformation()->GetLifetimeEnd();
Nicolas Geoffrayddb311f2014-05-16 09:28:54 +0100323 // For all live_in instructions at the loop header, we need to create a range
324 // that covers the full loop.
Vladimir Markoa5b8fde2014-05-23 15:16:44 +0100325 for (uint32_t idx : live_in->Indexes()) {
Vladimir Marko2aaa4b52015-09-17 17:03:26 +0100326 HInstruction* current = GetInstructionFromSsaIndex(idx);
Nicolas Geoffraydb216f42015-05-05 17:02:20 +0100327 current->GetLiveInterval()->AddLoopRange(block->GetLifetimeStart(), last_position);
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100328 }
329 }
330 }
331}
332
333void SsaLivenessAnalysis::ComputeLiveInAndLiveOutSets() {
334 bool changed;
335 do {
336 changed = false;
337
Nicolas Geoffray0d9f17d2015-04-15 14:17:44 +0100338 for (HPostOrderIterator it(*graph_); !it.Done(); it.Advance()) {
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100339 const HBasicBlock& block = *it.Current();
340
341 // The live_in set depends on the kill set (which does not
342 // change in this loop), and the live_out set. If the live_out
343 // set does not change, there is no need to update the live_in set.
344 if (UpdateLiveOut(block) && UpdateLiveIn(block)) {
345 changed = true;
346 }
347 }
348 } while (changed);
349}
350
351bool SsaLivenessAnalysis::UpdateLiveOut(const HBasicBlock& block) {
352 BitVector* live_out = GetLiveOutSet(block);
353 bool changed = false;
354 // The live_out set of a block is the union of live_in sets of its successors.
Vladimir Marko60584552015-09-03 13:35:12 +0000355 for (HBasicBlock* successor : block.GetSuccessors()) {
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100356 if (live_out->Union(GetLiveInSet(*successor))) {
357 changed = true;
358 }
359 }
360 return changed;
361}
362
363
364bool SsaLivenessAnalysis::UpdateLiveIn(const HBasicBlock& block) {
365 BitVector* live_out = GetLiveOutSet(block);
366 BitVector* kill = GetKillSet(block);
367 BitVector* live_in = GetLiveInSet(block);
368 // If live_out is updated (because of backward branches), we need to make
369 // sure instructions in live_out are also in live_in, unless they are killed
370 // by this block.
371 return live_in->UnionIfNotIn(live_out, kill);
372}
373
Nicolas Geoffrayda02afe2015-02-11 02:29:42 +0000374static int RegisterOrLowRegister(Location location) {
375 return location.IsPair() ? location.low() : location.reg();
376}
377
Nicolas Geoffrayfbda5f32015-04-29 14:16:00 +0100378int LiveInterval::FindFirstRegisterHint(size_t* free_until,
379 const SsaLivenessAnalysis& liveness) const {
Nicolas Geoffrayda02afe2015-02-11 02:29:42 +0000380 DCHECK(!IsHighInterval());
Nicolas Geoffrayf01d3442015-03-27 17:15:49 +0000381 if (IsTemp()) return kNoRegister;
382
Nicolas Geoffray01ef3452014-10-01 11:32:17 +0100383 if (GetParent() == this && defined_by_ != nullptr) {
384 // This is the first interval for the instruction. Try to find
385 // a register based on its definition.
386 DCHECK_EQ(defined_by_->GetLiveInterval(), this);
387 int hint = FindHintAtDefinition();
388 if (hint != kNoRegister && free_until[hint] > GetStart()) {
389 return hint;
390 }
391 }
392
Nicolas Geoffrayfbda5f32015-04-29 14:16:00 +0100393 if (IsSplit() && liveness.IsAtBlockBoundary(GetStart() / 2)) {
394 // If the start of this interval is at a block boundary, we look at the
395 // location of the interval in blocks preceding the block this interval
396 // starts at. If one location is a register we return it as a hint. This
397 // will avoid a move between the two blocks.
398 HBasicBlock* block = liveness.GetBlockFromPosition(GetStart() / 2);
Nicolas Geoffray82726882015-06-01 13:51:57 +0100399 size_t next_register_use = FirstRegisterUse();
Vladimir Marko60584552015-09-03 13:35:12 +0000400 for (HBasicBlock* predecessor : block->GetPredecessors()) {
401 size_t position = predecessor->GetLifetimeEnd() - 1;
Nicolas Geoffrayfbda5f32015-04-29 14:16:00 +0100402 // We know positions above GetStart() do not have a location yet.
403 if (position < GetStart()) {
404 LiveInterval* existing = GetParent()->GetSiblingAt(position);
405 if (existing != nullptr
406 && existing->HasRegister()
Nicolas Geoffray82726882015-06-01 13:51:57 +0100407 // It's worth using that register if it is available until
408 // the next use.
409 && (free_until[existing->GetRegister()] >= next_register_use)) {
Nicolas Geoffrayfbda5f32015-04-29 14:16:00 +0100410 return existing->GetRegister();
411 }
412 }
413 }
414 }
415
Nicolas Geoffray01ef3452014-10-01 11:32:17 +0100416 UsePosition* use = first_use_;
417 size_t start = GetStart();
418 size_t end = GetEnd();
419 while (use != nullptr && use->GetPosition() <= end) {
420 size_t use_position = use->GetPosition();
Nicolas Geoffray57902602015-04-21 14:28:41 +0100421 if (use_position >= start && !use->IsSynthesized()) {
Nicolas Geoffray01ef3452014-10-01 11:32:17 +0100422 HInstruction* user = use->GetUser();
423 size_t input_index = use->GetInputIndex();
424 if (user->IsPhi()) {
425 // If the phi has a register, try to use the same.
426 Location phi_location = user->GetLiveInterval()->ToLocation();
Nicolas Geoffrayda02afe2015-02-11 02:29:42 +0000427 if (phi_location.IsRegisterKind()) {
428 DCHECK(SameRegisterKind(phi_location));
429 int reg = RegisterOrLowRegister(phi_location);
430 if (free_until[reg] >= use_position) {
431 return reg;
432 }
Nicolas Geoffray01ef3452014-10-01 11:32:17 +0100433 }
Nicolas Geoffray01ef3452014-10-01 11:32:17 +0100434 // If the instruction dies at the phi assignment, we can try having the
435 // same register.
Vladimir Markoec7802a2015-10-01 20:57:57 +0100436 if (end == user->GetBlock()->GetPredecessors()[input_index]->GetLifetimeEnd()) {
Nicolas Geoffray01ef3452014-10-01 11:32:17 +0100437 for (size_t i = 0, e = user->InputCount(); i < e; ++i) {
438 if (i == input_index) {
439 continue;
440 }
441 HInstruction* input = user->InputAt(i);
442 Location location = input->GetLiveInterval()->GetLocationAt(
Vladimir Markoec7802a2015-10-01 20:57:57 +0100443 user->GetBlock()->GetPredecessors()[i]->GetLifetimeEnd() - 1);
Nicolas Geoffrayda02afe2015-02-11 02:29:42 +0000444 if (location.IsRegisterKind()) {
445 int reg = RegisterOrLowRegister(location);
446 if (free_until[reg] >= use_position) {
447 return reg;
448 }
Nicolas Geoffray01ef3452014-10-01 11:32:17 +0100449 }
450 }
451 }
452 } else {
453 // If the instruction is expected in a register, try to use it.
454 LocationSummary* locations = user->GetLocations();
455 Location expected = locations->InAt(use->GetInputIndex());
456 // We use the user's lifetime position - 1 (and not `use_position`) because the
457 // register is blocked at the beginning of the user.
458 size_t position = user->GetLifetimePosition() - 1;
Nicolas Geoffrayda02afe2015-02-11 02:29:42 +0000459 if (expected.IsRegisterKind()) {
460 DCHECK(SameRegisterKind(expected));
461 int reg = RegisterOrLowRegister(expected);
462 if (free_until[reg] >= position) {
463 return reg;
464 }
Nicolas Geoffray01ef3452014-10-01 11:32:17 +0100465 }
466 }
467 }
468 use = use->GetNext();
469 }
470
471 return kNoRegister;
472}
473
474int LiveInterval::FindHintAtDefinition() const {
475 if (defined_by_->IsPhi()) {
476 // Try to use the same register as one of the inputs.
Vladimir Marko60584552015-09-03 13:35:12 +0000477 const ArenaVector<HBasicBlock*>& predecessors = defined_by_->GetBlock()->GetPredecessors();
Nicolas Geoffray01ef3452014-10-01 11:32:17 +0100478 for (size_t i = 0, e = defined_by_->InputCount(); i < e; ++i) {
479 HInstruction* input = defined_by_->InputAt(i);
Vladimir Marko60584552015-09-03 13:35:12 +0000480 size_t end = predecessors[i]->GetLifetimeEnd();
David Brazdil241a4862015-04-16 17:59:03 +0100481 LiveInterval* input_interval = input->GetLiveInterval()->GetSiblingAt(end - 1);
482 if (input_interval->GetEnd() == end) {
Nicolas Geoffray01ef3452014-10-01 11:32:17 +0100483 // If the input dies at the end of the predecessor, we know its register can
484 // be reused.
David Brazdil241a4862015-04-16 17:59:03 +0100485 Location input_location = input_interval->ToLocation();
Nicolas Geoffrayda02afe2015-02-11 02:29:42 +0000486 if (input_location.IsRegisterKind()) {
487 DCHECK(SameRegisterKind(input_location));
488 return RegisterOrLowRegister(input_location);
Nicolas Geoffray01ef3452014-10-01 11:32:17 +0100489 }
490 }
491 }
492 } else {
493 LocationSummary* locations = GetDefinedBy()->GetLocations();
494 Location out = locations->Out();
495 if (out.IsUnallocated() && out.GetPolicy() == Location::kSameAsFirstInput) {
496 // Try to use the same register as the first input.
David Brazdil241a4862015-04-16 17:59:03 +0100497 LiveInterval* input_interval =
498 GetDefinedBy()->InputAt(0)->GetLiveInterval()->GetSiblingAt(GetStart() - 1);
499 if (input_interval->GetEnd() == GetStart()) {
Nicolas Geoffray01ef3452014-10-01 11:32:17 +0100500 // If the input dies at the start of this instruction, we know its register can
501 // be reused.
David Brazdil241a4862015-04-16 17:59:03 +0100502 Location location = input_interval->ToLocation();
Nicolas Geoffrayda02afe2015-02-11 02:29:42 +0000503 if (location.IsRegisterKind()) {
504 DCHECK(SameRegisterKind(location));
505 return RegisterOrLowRegister(location);
Nicolas Geoffray01ef3452014-10-01 11:32:17 +0100506 }
507 }
508 }
509 }
510 return kNoRegister;
511}
512
Nicolas Geoffray102cbed2014-10-15 18:31:05 +0100513bool LiveInterval::SameRegisterKind(Location other) const {
Nicolas Geoffrayda02afe2015-02-11 02:29:42 +0000514 if (IsFloatingPoint()) {
515 if (IsLowInterval() || IsHighInterval()) {
516 return other.IsFpuRegisterPair();
517 } else {
518 return other.IsFpuRegister();
519 }
520 } else {
521 if (IsLowInterval() || IsHighInterval()) {
522 return other.IsRegisterPair();
523 } else {
524 return other.IsRegister();
525 }
526 }
Nicolas Geoffray102cbed2014-10-15 18:31:05 +0100527}
528
Nicolas Geoffray01ef3452014-10-01 11:32:17 +0100529bool LiveInterval::NeedsTwoSpillSlots() const {
530 return type_ == Primitive::kPrimLong || type_ == Primitive::kPrimDouble;
531}
532
533Location LiveInterval::ToLocation() const {
Nicolas Geoffray840e5462015-01-07 16:01:24 +0000534 DCHECK(!IsHighInterval());
Nicolas Geoffray01ef3452014-10-01 11:32:17 +0100535 if (HasRegister()) {
Nicolas Geoffray840e5462015-01-07 16:01:24 +0000536 if (IsFloatingPoint()) {
537 if (HasHighInterval()) {
538 return Location::FpuRegisterPairLocation(GetRegister(), GetHighInterval()->GetRegister());
539 } else {
540 return Location::FpuRegisterLocation(GetRegister());
541 }
542 } else {
543 if (HasHighInterval()) {
544 return Location::RegisterPairLocation(GetRegister(), GetHighInterval()->GetRegister());
545 } else {
546 return Location::RegisterLocation(GetRegister());
547 }
548 }
Nicolas Geoffray01ef3452014-10-01 11:32:17 +0100549 } else {
550 HInstruction* defined_by = GetParent()->GetDefinedBy();
551 if (defined_by->IsConstant()) {
552 return defined_by->GetLocations()->Out();
553 } else if (GetParent()->HasSpillSlot()) {
554 if (NeedsTwoSpillSlots()) {
555 return Location::DoubleStackSlot(GetParent()->GetSpillSlot());
556 } else {
557 return Location::StackSlot(GetParent()->GetSpillSlot());
558 }
559 } else {
560 return Location();
561 }
562 }
563}
564
David Brazdil5b8e6a52015-02-25 16:17:05 +0000565Location LiveInterval::GetLocationAt(size_t position) {
David Brazdil241a4862015-04-16 17:59:03 +0100566 LiveInterval* sibling = GetSiblingAt(position);
567 DCHECK(sibling != nullptr);
568 return sibling->ToLocation();
Nicolas Geoffray01ef3452014-10-01 11:32:17 +0100569}
570
David Brazdil241a4862015-04-16 17:59:03 +0100571LiveInterval* LiveInterval::GetSiblingAt(size_t position) {
David Brazdil5b8e6a52015-02-25 16:17:05 +0000572 LiveInterval* current = this;
David Brazdil241a4862015-04-16 17:59:03 +0100573 while (current != nullptr && !current->IsDefinedAt(position)) {
Nicolas Geoffray01ef3452014-10-01 11:32:17 +0100574 current = current->GetNextSibling();
Nicolas Geoffray01ef3452014-10-01 11:32:17 +0100575 }
David Brazdil241a4862015-04-16 17:59:03 +0100576 return current;
Nicolas Geoffray01ef3452014-10-01 11:32:17 +0100577}
578
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100579} // namespace art